Let er be the unit radial vector field. Compute the outward flux of the vector field F through the ellipsoid 4x² + 6y² + 9z² 36. [Hint: Because F is not defined at zero, you cannot = er/r² use the divergence theorem on the bounded region inside of S. ] =
Let er be the unit radial vector field. Compute the outward flux of the vector field F through the ellipsoid 4x² + 6y² + 9z² 36. [Hint: Because F is not defined at zero, you cannot = er/r² use the divergence theorem on the bounded region inside of S. ] =
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Let er be the unit radial vector field. Compute the outward flux of the vector field F er/r²
through the ellipsoid 4x² + 6y² + 9z² = 36. [Hint: Because F is not defined at zero, you cannot
use the divergence theorem on the bounded region inside of S. ]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd5d0662c-e3a2-4a4e-b96d-9b625dcca7d4%2Fd0bde1f7-7fd9-4fc3-9083-b1b24c78b751%2Ffe54ayq_processed.png&w=3840&q=75)
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Let er be the unit radial vector field. Compute the outward flux of the vector field F er/r²
through the ellipsoid 4x² + 6y² + 9z² = 36. [Hint: Because F is not defined at zero, you cannot
use the divergence theorem on the bounded region inside of S. ]
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